Atomizer, control method, control device and storage medium

Through density detection and bubble detector combined with ultrasonic waves and inflation devices, the problem of blockage of the atomizer water outlet is solved, and the drug is shaken evenly and bubbles are eliminated, ensuring smooth atomization of the drug.

CN115120818BActive Publication Date: 2025-09-02GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202210880354.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-25
Publication Date
2025-09-02
Estimated Expiration
2042-07-25

AI Technical Summary

Technical Problem

The water outlet of existing atomizers is prone to clogging, especially due to the problems of particle precipitation and bubble blockage caused by drug standstill, which affects the effect of drug atomization.

Method used

The density detector and bubble detector are used to detect the density and bubble-liquid ratio of the drug liquid, and the uniformity of the drug liquid is controlled through the ultrasonic generator and the inflatable device to prevent drug precipitation and bubble blockage, including the combination of control components and alarm components.

Benefits of technology

Effectively prevent the drug from clogging the water outlet, ensure that the drug is shaken well, improve the atomization effect, reduce bubble blockage, and ensure smooth atomization of the drug.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides an atomizer, a control method, a control device, and a storage medium. The atomizer includes: a cup holder having a cup cavity; a medicine cup for storing liquid medicine, disposed within the cup cavity; a density detector mounted within the medicine cup to detect the density of the liquid medicine within the medicine cup; and a density uniformity structure connected to the medicine cup to cause the liquid medicine within the medicine cup to fluctuate. The present invention solves the problem of easily clogged water outlets in prior art atomizers.
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Description

Technical Field

[0001] The present invention relates to the field of commonly used medical devices, and in particular to an atomizer, a control method, a control device and a storage medium. Background Art

[0002] A medical nebulizer is a commonly used medical device for providing aerosol treatment to patients with respiratory diseases. The liquid is vibrated through the atomizing plate and converted into gas, which is then delivered into the patient's respiratory tract.

[0003] Users often use suspension medicines for atomization. However, since suspension medicines disperse the solid components of the effective medicine in the form of particles in the liquid, if they are left standing for too long, the particles will settle, and if they are not shaken evenly before use, the water outlet will be blocked.

[0004] In addition, when using certain drugs such as budesonide suspension, bubbles will be generated during atomization, which prevents the drug from fully contacting the atomizer sheet, resulting in no atomization. Moreover, since the bubbles are blocked at the nozzle, the user cannot clearly see the bubble blockage. Summary of the Invention

[0005] The main purpose of the present invention is to provide an atomizer, a control method, a control device and a storage medium to solve the problem that the water outlet of the atomizer in the prior art is easily clogged.

[0006] To achieve the above objectives, according to a first aspect of the present invention, a nebulizer is provided, comprising: a cup holder having a cup cavity; a medicine cup for storing liquid medicine, the medicine cup being disposed in the cup cavity; a density detector installed in the medicine cup to detect the density of the liquid medicine in the medicine cup; and a density uniformity structure connected to the medicine cup to drive fluctuations in the liquid medicine in the medicine cup.

[0007] Furthermore, the uniform density structure includes: an ultrasonic generator, which is arranged at the bottom of the medicine cup.

[0008] Furthermore, the nebulizer also includes: a control component connected to the ultrasonic generator to control the ultrasonic generator to start or stop when the density detector detects that the density P of the liquid medicine in the medicine cup is greater than the predetermined density P0 within the first predetermined time period t1.

[0009] Furthermore, the uniform density structure includes: an inflation device, which is connected to the medicine cup to fill gas into the medicine cup.

[0010] Furthermore, the density uniformity structure also includes: an alarm component, which is connected to the density detector so that when the density detector detects that the density P of the liquid medicine in the medicine cup is greater than the predetermined density P0 within the first predetermined time period t1, the alarm component sends a sound signal and / or a light signal to prompt the user to operate the inflation device.

[0011] Furthermore, the cup seat has a cup opening, and the nebulizer includes a cup seat cover for covering the cup opening. The cup seat cover is provided with an inflation port connected to the cavity of the medicine cup, and the inflation device is connected to the inflation port.

[0012] Furthermore, the inflation device includes a pressing airbag, so as to press the airbag into the medicine cup. The pressing airbag is installed on the upper surface of the cup seat cover.

[0013] Furthermore, the uniform density structure further includes: a vibrator, which is connected to the medicine cup and is installed on the inner side or the outer side of the medicine cup.

[0014] Furthermore, the nebulizer further comprises: a bubble detector, which is arranged at the water outlet of the medicine cup to detect the bubble-liquid ratio at the water outlet.

[0015] Furthermore, the atomizer also includes: a control component, which is connected to the bubble detector signal so that when the bubble-liquid ratio V detected by the bubble detector is greater than the predetermined ratio V0 within the second predetermined time period t2, the control component controls the density uniformity structure to start or issues an instruction to display an alarm signal.

[0016] According to a second aspect of the present invention, a nebulizer control method is provided, which is applicable to the above-mentioned nebulizer. The nebulizer control method includes: detecting the working state of the nebulizer, where the working state includes a start state and a pause state; when the nebulizer is in the start state, detecting the bubble-to-liquid ratio V at the water outlet of the medicine cup of the nebulizer, so as to control the density uniformity structure of the nebulizer to start or maintain a non-working state according to the bubble-to-liquid ratio V; when the nebulizer is in the pause state, detecting the density of the medicine liquid in the detection medicine cup of the nebulizer, so as to control the density uniformity structure to start or maintain a non-working state according to the density of the medicine liquid.

[0017] Furthermore, the method for controlling the density uniformity structure to start or maintain a non-working state according to the bubble-liquid ratio includes: when the detected bubble-liquid ratio V is greater than a predetermined ratio V0 within a second predetermined time period t2, controlling the density uniformity structure to start.

[0018] Furthermore, the method of controlling the density uniformity structure to start or maintain a non-working state according to the density of the medicine liquid includes: when the density detector detects that the density P of the medicine liquid in the medicine cup is greater than the predetermined density P0 within the first predetermined time period t1, controlling the density uniformity structure to start.

[0019] Furthermore, the method for controlling the activation of the density uniformity structure includes: sending a startup signal to the density uniformity structure through the control component of the atomizer; or sending a sound signal and / or light signal through the alarm component of the atomizer to prompt the user to activate the density uniformity structure.

[0020] According to a third aspect of the present invention, a control device is provided, comprising: a first detection module for detecting the operating state of a nebulizer; a second detection module for detecting, based on the detection result of the first detection module, the bubble-to-liquid ratio V at the water outlet of the medicine cup of the nebulizer, or detecting the density of the medicine liquid in the detection medicine cup of the nebulizer; and a judgment module, the judgment module being connected to both the first detection module and the second detection module, for judging the operating state of the nebulizer, judging the magnitude relationship between the bubble-to-liquid ratio V and a predetermined ratio V0, or judging the magnitude relationship between the medicine liquid density and a predetermined density P0, so as to control the density uniformity structure of the nebulizer to start or maintain a non-operating state, or to control an alarm component of the nebulizer to emit an acoustic signal and / or a light signal.

[0021] According to a fourth aspect of the present invention, a non-volatile storage medium is provided. The non-volatile storage medium includes a stored program, wherein the program executes the above-mentioned atomizer control method.

[0022] Applying the technical solution of the present invention, the nebulizer includes a cup holder, a medicine cup, and a density detector. The cup holder has a cup cavity, the medicine cup is disposed within the cup cavity, and the density detector is mounted within the medicine cup to detect the density of the liquid medicine within the medicine cup. A density uniformity structure is connected to the medicine cup to cause the liquid medicine within the medicine cup to fluctuate. Thus, the activation of the density uniformity structure can be controlled based on the detection results of the density detector. When the density of the liquid medicine within the medicine cup is high, indicating that the medicine within the medicine cup has settled, the density uniformity structure can be activated to cause the liquid medicine within the medicine cup to fluctuate, thereby fully agitating the medicine and preventing the medicine from clogging the water outlet of the medicine cup. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The accompanying drawings, which constitute part of this application, are intended to provide a further understanding of the present invention. The exemplary embodiments of the present invention and their descriptions are intended to explain the present invention and do not constitute an undue limitation of the present invention. In the accompanying drawings:

[0024] Figure 1 A schematic diagram showing the overall structure of a first embodiment of an atomizer according to the present invention from a first viewing angle is shown;

[0025] Figure 2 A first schematic plan view of a first embodiment of an atomizer according to the present invention is shown;

[0026] Figure 3 A schematic diagram of the overall appearance of a first embodiment of an atomizer according to the present invention is shown;

[0027] Figure 4 Shown Figure 3 A front view of an atomizer;

[0028] Figure 5 Shown according to Figure 3The rear view of the atomizer;

[0029] Figure 6 Shown according to Figure 3 A side view of an atomizer;

[0030] Figure 7 Shown according to Figure 3 A top view of the atomizer;

[0031] Figure 8 Shown according to Figure 3 Bottom view of the atomizer;

[0032] Figure 9 A cross-sectional view showing a first embodiment of an atomizer according to the present invention;

[0033] Figure 10 A schematic diagram showing the overall structure of the first embodiment of the atomizer according to the present invention from a second viewing angle is shown;

[0034] Figure 11 A schematic diagram showing the overall structure of a second embodiment of an atomizer according to the present invention from a first viewing angle is shown;

[0035] Figure 12 A schematic diagram showing the overall appearance of a second embodiment of an atomizer according to the present invention is shown;

[0036] Figure 13 Shown according to Figure 12 A front view of an atomizer;

[0037] Figure 14 Shown according to Figure 12 Right side view of the atomizer;

[0038] Figure 15 Shown according to Figure 12 Left side view of the atomizer;

[0039] Figure 16 Shown according to Figure 12 The rear view of the atomizer;

[0040] Figure 17 Shown according to Figure 12 Bottom view of the atomizer;

[0041] Figure 18 Shown according to Figure 12 A top view of the atomizer;

[0042] Figure 19 A schematic diagram showing the overall structure of a second embodiment of the atomizer according to the present invention from a second viewing angle is shown;

[0043] Figure 20shows a cross-sectional view of a second embodiment of an atomizer according to the present invention;

[0044] Figure 21 Shown according to Figure 19 An enlarged schematic diagram of the A region of the atomizer;

[0045] Figure 22 Shown according to Figure 20 An enlarged schematic diagram of the B region of the atomizer;

[0046] Figure 23 A flowchart showing a specific implementation of the first embodiment of the atomizer control method according to the present invention is shown;

[0047] Figure 24 A specific implementation flow chart of the second embodiment of the atomizer control method according to the present invention is shown.

[0048] The above drawings include the following reference numerals:

[0049] 10. Cup holder; 100. Cup cavity; 20. Medicine cup; 201. Nozzle; 202. Atomizer; 30. Density detector; 40. Ultrasonic generator; 50. Control component; 11. Cup holder cover; 60. Bubble detector; 70. Inflator. DETAILED DESCRIPTION

[0050] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0051] Please refer to Figures 1 to 22 The present invention provides a nebulizer, comprising: a cup base 10 having a cup cavity 100; a medicine cup 20 for storing liquid medicine, the medicine cup 20 being disposed in the cup cavity 100; a density detector 30, the density detector 30 being installed in the medicine cup 20 to detect the density of the liquid medicine in the medicine cup 20; and a density uniformity structure, the density uniformity structure being connected to the medicine cup 20 to drive the liquid medicine in the medicine cup 20 to fluctuate.

[0052] The nebulizer of the present invention includes a cup holder 10, a medicine cup 20, a density detector 30, and a density uniformity structure. The cup holder 10 has a cup cavity 100, the medicine cup 20 is disposed within the cup cavity 100, and the density detector 30 is mounted within the medicine cup 20 to detect the density of the liquid medicine in the medicine cup 20. The density uniformity structure is connected to the medicine cup 20 to cause the liquid medicine in the medicine cup 20 to fluctuate. In this way, the activation of the density uniformity structure can be controlled based on the detection results of the density detector 30. When the density of the liquid medicine in the medicine cup 20 is high, it can be determined that the medicine in the medicine cup 20 has settled. In this case, the density uniformity structure can be activated to cause the liquid medicine in the medicine cup 20 to fluctuate, ensuring that the medicine is fully shaken and preventing the medicine from clogging the water outlet of the medicine cup 20.

[0053] Specifically, the uniform density structure includes an ultrasonic generator 40 , which is disposed in the medicine cup 20 and located at the bottom of the medicine cup 20 .

[0054] Specifically, the nebulizer also includes: a control component 50, which is connected to the ultrasonic generator 40 to control the ultrasonic generator 40 to start or stop when the density detector 30 detects that the density P of the liquid medicine in the medicine cup 20 is greater than the predetermined density P0 within the first predetermined time period t1.

[0055] Optionally, the control assembly 50 is mounted on a wall surface of the cup holder 10. The control assembly 50 is mounted on a wall surface of the cup holder body.

[0056] Specifically, the atomizer further includes an atomizing sheet 202 and a nozzle 201. The atomizing sheet 202 is disposed between the nozzle 201 and the water outlet of the medicine cup 20. The atomizer further includes a spray port, which is located on the side of the atomizing sheet away from the water outlet. Alternatively, the atomizing sheet is mounted on the spray port so that water flowing out of the water outlet flows to the atomizing sheet, is atomized by the atomizing sheet, and is then sprayed out of the spray port. Figures 11 to 19 As shown, the uniform density structure includes: an inflation device 70 , which is in communication with the medicine cup 20 to fill gas into the medicine cup 20 .

[0057] Specifically, the density uniformity structure further includes: an alarm component, which is connected to the density detector 30, so that when the density detector 30 detects that the density P of the liquid medicine in the medicine cup 20 is greater than the predetermined density P0 within the first predetermined time period t1, the alarm component emits an acoustic signal and / or a light signal to prompt the user to operate the inflation device 70.

[0058] Specifically, the cup holder 10 has a cup mouth, and the nebulizer includes a cup holder cover 11 for covering the cup mouth to seal the medicine cup 20 through the cup holder cover 11. The inflation device 70 is installed above the cup holder cover 11. The cup holder cover 11 is provided with an inflation port connected to the cavity of the medicine cup 20, and the inflation device 70 is connected to the inflation port.

[0059] Alternatively, as Figure 2 、 Figure 9 As shown, the cup base 10 includes a medicine cup base and a cup base body connected to each other, and the medicine cup 20 is arranged in the cup cavity of the medicine cup base. The ultrasonic generator 40 is installed between the medicine cup 20 and the medicine cup base.

[0060] Specifically, the medicine cup holder has a connecting portion connected to the cup holder body, and the connecting portion includes an L-shaped structure formed by a first connecting segment and a second connecting segment. The bottom wall of the medicine cup 20 on the side away from the cup holder cover 11 is spaced apart from the inner wall surface of the first connecting segment on the side close to the cup holder cover 11, so that the ultrasonic generator 40 is installed between the medicine cup 20 and the first connecting segment of the medicine cup holder.

[0061] Preferably, the ultrasonic generator 40 is mounted on the wall surface of the bottom wall of the medicine cup 20 on a side away from the cup seat cover 11 .

[0062] Optionally, the density detector 30 is mounted on the inner wall of the medicine cup 20 ; or, the density detector 30 is connected to both the bottom wall and the inner wall of the medicine cup 20 , so that the density detector 30 can detect the static sedimentation of the medicine.

[0063] The present application utilizes the electronic high-frequency oscillation of the ultrasonic generator 40 to break up the drug liquid molecules into a drug mist which is sprayed out from the spray port for the patient to inhale; the ultrasonic generator 40 is located on the bottom wall of the medicine cup 20 and is used to shake the medicine evenly and reduce bubbles.

[0064] like Figures 1 to 10 、 Figure 23 As shown, in the specific implementation process of the first embodiment of the present invention, the user places medicine into the medicine cup and activates the nebulizer. The medicine flows to the nebulizer plate 202, which breaks the medicine into a mist for the patient to inhale. As the medicine flows to the nozzle 201, the bubble detector 60 detects the medicine bubble-to-liquid ratio. If the bubble-to-liquid ratio V remains greater than the set mark V0 during the second preset time period t2, the control component activates the ultrasonic generator 40 to shake the medicine in the medicine cup 20 and reduce bubble blockage. When the user presses the pause button to pause the nebulizer, the density detector 30 activates to detect the density of the medicine at the bottom of the medicine cup 20. If the density P remains greater than the standard P0 during the first preset time period t1, the ultrasonic generator is activated to shake the medicine liquid.

[0065] Specifically, the inflation device 70 includes a pressing airbag to pressurize gas into the medicine cup 20 by pressing the pressing airbag, and the pressing airbag is installed on the upper surface of the cup seat cover 11 .

[0066] Optionally, the uniform density structure further includes: a vibrator, which is connected to the medicine cup 20 and is installed on the inner side or the outer side of the medicine cup 20 .

[0067] Figures 19 to 22 As shown, the nebulizer further includes a bubble detector 60, which is disposed at the water outlet of the medicine cup 20 to detect the bubble-to-liquid ratio at the water outlet. The bubble-to-liquid ratio is the ratio of air to liquid in the bubbles at the water outlet of the medicine cup 20.

[0068] Specifically, the nebulizer also includes a nozzle 201, the spray port and the water outlet are arranged opposite to each other, the bubble detector 60 is installed on the inner side of the medicine cup cavity of the medicine cup 20, and the water outlet of the medicine cup 20 has a mounting protrusion connected to the bottom wall of the medicine cup. The bubble detector 60 is installed on the bottom wall of the medicine cup 20 and the side wall of the mounting protrusion away from the nebulizer plate 202.

[0069] Specifically, the nebulizer also includes: an inflation device 70, which is connected to the medicine cup 20 to fill gas into the medicine cup 20; a control component 50 and an alarm component, and the control component 50 is connected to the alarm component so that when the bubble-liquid ratio V detected by the bubble detector 60 is greater than the predetermined ratio V0 within the second predetermined time period t2, the control component 50 controls the alarm component to emit an acoustic signal and / or a light signal to prompt the user to operate the inflation device 70.

[0070] like Figures 11 to 20 、 Figure 24 As shown, in the specific implementation process of the second embodiment of the present invention, the user places medication into medicine cup 20 and activates the nebulizer. The medication flows to atomizer plate 202, which breaks the medication into a mist that is sprayed out from nozzle 201 for inhalation by the patient. As the medication flows to nozzle 201, bubble detector 60 detects the medication bubble-to-liquid ratio. If the bubble-to-liquid ratio V is greater than a predetermined ratio V0 for a second predetermined time period t2, an alarm component generates an audible and / or visual signal prompting the user to press the aerator 70 above the cup holder cover to pressurize medicine cup 20, thereby evenly shaking the medication in medicine cup 20 and reducing bubble blockage. When the user presses the pause button to pause the nebulizer, density detector 30 activates to detect the density of the bottom of the medication in medicine cup 20. If the density P remains greater than a standard value P0 for a predetermined time period T, the entire device similarly prompts the user to press the aerator 70 above the cup holder cover 11 to pressurize medicine cup 20.

[0071] Please refer to Figure 23 and Figure 24 The present invention also provides a nebulizer control method applicable to the above-mentioned nebulizer, the nebulizer control method comprising: detecting the working state of the nebulizer, the working state including the starting state and the pause state; when the nebulizer is in the starting state, detecting the bubble-to-liquid ratio V at the water outlet of the medicine cup 20 of the nebulizer, so as to control the density uniformity structure to start or maintain the non-working state according to the bubble-to-liquid ratio V; when the nebulizer is in the pause state, detecting the density of the medicine liquid in the detection medicine cup 20 of the nebulizer, so as to control the density uniformity structure to start or maintain the non-working state according to the density of the medicine liquid.

[0072] Specifically, the method for controlling the density uniformity structure to start or maintain a non-working state according to the bubble-liquid ratio V includes: when the detected bubble-liquid ratio V is greater than a predetermined ratio V0 within a second predetermined time period t2, controlling the density uniformity structure to start.

[0073] Specifically, the method for controlling the density uniformity structure to start or remain in a non-working state according to the density of the medicine liquid includes: when the density detector 30 detects that the density P of the medicine liquid in the medicine cup 20 is greater than the predetermined density P0 within the first predetermined time period t1, controlling the density uniformity structure to start.

[0074] Specifically, the method for controlling the activation of the density uniformity structure includes: sending a startup signal to the density uniformity structure through the control component of the atomizer; or sending a sound signal and / or light signal through the alarm component of the atomizer to prompt the user to activate the density uniformity structure.

[0075] The present invention provides a control device, comprising: a first detection module, for detecting the operating state of a nebulizer; a second detection module, for detecting the bubble-to-liquid ratio V at the water outlet of a medicine cup of the nebulizer, or detecting the density of the medicine liquid in the detection medicine cup of the nebulizer based on the detection result of the first detection module; and a judgment module, the judgment module being connected to both the first detection module and the second detection module, for judging the operating state of the nebulizer, judging the magnitude relationship between the bubble-to-liquid ratio V and a predetermined ratio V0, or judging the magnitude relationship between the medicine liquid density and a predetermined density P0, so as to control a density uniformity structure of the nebulizer to start or maintain a non-operating state, or to control an alarm component of the nebulizer to emit an acoustic signal and / or a light signal.

[0076] The present invention provides a non-volatile storage medium, which includes a stored program, wherein the program executes the above-mentioned atomizer control method.

[0077] In summary, the atomizer of the present invention solves the problem in the prior art that particles of the medicine will settle if left standing for too long and the water outlet will be blocked if not shaken evenly before use. It also solves the problem that bubbles will be generated when atomizing certain medicines and the mist outlet of the nozzle 201 will be blocked.

[0078] From the above description, it can be seen that the above embodiments of the present invention achieve the following technical effects:

[0079] The nebulizer of the present invention includes a cup holder 10, a medicine cup 20, and a density detector 30. The cup holder 10 has a cup cavity 100, within which the medicine cup 20 is disposed. The density detector 30 is mounted to the medicine cup 20 to detect the density of the liquid medicine in the medicine cup 20. A density uniformity structure is connected to the medicine cup 20 to cause the liquid medicine in the medicine cup 20 to fluctuate. Thus, the activation of the density uniformity structure can be controlled based on the detection results of the density detector 30. When the density of the liquid medicine in the medicine cup 20 is high, it can be determined that the medicine in the medicine cup 20 has settled. In this case, the density uniformity structure can be activated to cause the liquid medicine in the medicine cup 20 to fluctuate, thereby fully agitating the medicine and preventing it from clogging the water outlet of the medicine cup 20. Specifically, the density uniformity structure includes an ultrasonic generator 40, which is disposed within the medicine cup 20 and at the bottom of the medicine cup 20.

[0080] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. An atomizer, characterized in that: include: A cup holder (10) having a cup cavity (100); A medicine cup (20) for storing liquid medicine, wherein the medicine cup (20) is disposed in the cup cavity (100); a density detector (30), the density detector (30) being installed in the medicine cup (20) to detect the density of the medicine liquid in the medicine cup (20); A uniform density structure, the uniform density structure comprising an ultrasonic generator (40), the uniform density structure being connected to the medicine cup (20) to drive the medicine liquid in the medicine cup (20) to fluctuate, the ultrasonic generator (40) being arranged at the bottom of the medicine cup (20); a control component (50), the control component (50) being connected to the ultrasonic generator (40) to control the ultrasonic generator (40) to start or stop when the density detector (30) detects that the density P of the liquid medicine in the medicine cup (20) is greater than a predetermined density P0 within a first predetermined time period t1; a bubble detector (60), the bubble detector (60) being arranged at the water outlet of the medicine cup (20) to detect the bubble-liquid ratio at the water outlet; A control component (50) is connected to the bubble detector (60) by signal so that when the bubble-to-liquid ratio V detected by the bubble detector (60) is greater than a predetermined ratio V0 within a second predetermined time period t2, the control component (50) controls the uniform density structure to start or issues an instruction to display an alarm signal.

2. The atomizer according to claim 1, characterized in that The uniform density structure comprises: An inflation device (70), the inflation device (70) is in communication with the medicine cup (20) to inflate gas into the medicine cup (20).

3. The atomizer according to claim 2, characterized in that The uniform density structure further comprises: An alarm component is connected to the density detector (30) so that when the density detector (30) detects that the density P of the liquid medicine in the medicine cup (20) is greater than a predetermined density P0 within a first predetermined time period t1, the alarm component emits an acoustic signal and / or a light signal to prompt a user to operate the inflation device (70).

4. The atomizer according to claim 2, characterized in that The cup seat (10) has a cup opening, and the nebulizer includes a cup seat cover (11) for covering the cup opening. The cup seat cover (11) is provided with an inflation port that is in communication with the cavity of the medicine cup (20), and the inflation device (70) is in communication with the inflation port.

5. The atomizer according to claim 4, characterized in that The inflation device (70) includes a pressing airbag, which is used to pressurize gas into the medicine cup (20) by pressing the pressing airbag, and the pressing airbag is installed on the upper surface of the cup seat cover (11).

6. The atomizer according to claim 1, characterized in that The uniform density structure further comprises: A vibrator is connected to the medicine cup (20), and the vibrator is installed on the inner side or the outer side of the medicine cup (20).

7. A method for controlling an atomizer, applicable to the atomizer according to any one of claims 1 to 6, characterized in that: Atomizer control methods include: Detecting the working state of the atomizer, wherein the working state includes a start state and a pause state; When the nebulizer is in the starting state, the bubble-liquid ratio V at the water outlet of the medicine cup (20) of the nebulizer is detected, so as to control the density uniformity structure of the nebulizer to start or maintain a non-working state according to the bubble-liquid ratio V; When the nebulizer is in the pause state, the density of the liquid medicine in the medicine cup (20) of the nebulizer is detected, so as to control the density uniformity structure to start or maintain a non-working state according to the density of the liquid medicine.

8. The atomizer control method according to claim 7, characterized in that: The method for controlling the uniform density structure to start or maintain a non-working state according to the bubble-to-liquid ratio includes: When the detected bubble-to-liquid ratio V is greater than the predetermined ratio V0 within the second predetermined time period t2, the density uniformity structure is controlled to start.

9. The atomizer control method according to claim 7, characterized in that: The method for controlling the density uniformity structure to start or maintain a non-working state according to the density of the liquid medicine comprises: When the density detector (30) detects that the density P of the liquid medicine in the medicine cup (20) is greater than the predetermined density P0 within the first predetermined time period t1, the density uniformity structure is controlled to start.

10. The atomizer control method according to claim 7, characterized in that: The method for controlling the startup of the uniform density structure includes: Sending a start signal to the density uniformity structure through the control component of the atomizer; or The alarm component of the atomizer sends out an acoustic signal and / or a light signal to prompt the user to start the uniform density structure.

11. A control device for executing the control method according to claim 7, characterized in that: include: A first detection module is used to detect the operating status of the atomizer; A second detection module is configured to detect the bubble-to-liquid ratio V at the water outlet of the medicine cup (20) of the nebulizer according to the detection result of the first detection module, or to detect the density of the medicine liquid in the medicine cup (20) of the nebulizer; A judgment module is connected to both the first detection module and the second detection module to judge the operating status of the nebulizer, judge the size relationship between the bubble-liquid ratio V and the predetermined ratio V0, or judge the size relationship between the liquid medicine density and the predetermined density P0, so as to control the density uniformity structure of the nebulizer to start or maintain a non-working state, or control the alarm component of the nebulizer to emit an acoustic signal and / or a light signal.

12. A non-volatile storage medium, characterized in that: The non-volatile storage medium includes a stored program, wherein the program executes the atomizer control method according to any one of claims 7 to 10.

Citation Information

Patent Citations

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